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Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7808 Paths
7808 Paths · page 290 / 781
This learning path guides junior environmental engineering students through the foundational principles and key statutes of U.S. environmental law, focusing on the Clean Water Act, Clean Air Act, and RCRA. It emphasizes the regulatory framework, compliance mechanisms, and practical implications for environmental engineering practice.
This learning path equips junior environmental engineering students with practical skills in water and air quality testing. It covers essential chemistry, sampling, instrumentation, quality assurance, and data analysis, culminating in hands-on laboratory practice.
This learning path guides junior environmental engineering students through the essential knowledge and skills for conducting environmental impact assessments (EIAs). It covers environmental fundamentals, the EIA process, key assessment methods, public participation, and case studies, preparing learners for professional practice.
This learning path guides junior environmental engineering students through the core concepts of hydrology, from the water cycle and its components (precipitation, infiltration, runoff, groundwater) to flood analysis and water resources management. It integrates essential fluid mechanics principles to build a quantitative understanding of water movement and management.
This learning path introduces junior environmental engineering students to the fundamental roles of microorganisms in natural and engineered environmental systems. It covers core microbiology and biochemistry concepts, then applies them to biodegradation, nutrient cycling, and biofilm processes, emphasizing their importance in environmental engineering applications.
This learning path equips junior environmental engineering students with the knowledge and skills to design effective solid waste management systems. It covers waste characterization, collection, recycling, composting, and landfilling, integrating environmental chemistry principles throughout. The path progresses from foundational concepts to design applications, preparing learners for careers in waste management.
This learning path provides a systematic understanding of air pollution, covering its sources, atmospheric behavior, and control technologies. It integrates environmental chemistry principles to explain pollutant formation, transformation, and mitigation. Designed for junior university students, it progresses from foundational concepts to advanced application.
This advanced learning path equips junior environmental engineering students with the knowledge and skills to design water and wastewater treatment systems. It covers core physical, chemical, and biological treatment processes, underpinned by essential environmental chemistry and fluid mechanics principles.
This learning path guides sophomore environmental engineering students through the fundamental principles of fluid mechanics as applied to environmental systems. It covers hydrostatics, pipe flow, open channel flow, and porous media flow, building from calculus and physics foundations to practical applications in environmental engineering.
This learning path introduces sophomore students to the chemical principles governing environmental systems. It covers fundamental chemistry, water and soil chemistry, atmospheric chemistry, and the fate of pollutants, emphasizing the application of these principles to real-world environmental problems.